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#include "mbed.h"
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#include "rtos.h"
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#include "X2D.h"
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#define BUF_SIZE 1000
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#define BIT_SIZE 160 //16Bytes + 0xFF + 0x00 + 3 bits + (n * 0 bit inserted by the X2D protocole to cut 0xFF
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7
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int processData(int size);
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void write_ctrl_reg(unsigned long write_data);
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unsigned long read_ctrl_reg(void);
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DigitalOut Reg_Data(PC_1); // Jaune
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DigitalOut RxTx(PC_0); // Bleu
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DigitalOut Tx(PA_9); // Noir
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DigitalOut UART(PA_0, 1); // Rouge
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//DigitalIn CD(PC_0); // Bleu
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//DigitalIn Rx(PB_7); // Vert
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//DigitalIn BU(PA_4); // Blanc
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DigitalIn CLR(PA_1); // Orange
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DigitalIn RSTO(PC_2); // Gris
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InterruptIn Rx(PB_7, PullUp);
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PlatformMutex sendbit_mutex;
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pulse_t timeDiff;
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CircularBuffer<pulse_t, BUF_SIZE> PulseWidth;
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CircularBuffer<msg_t, 10> MessageTx;
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CircularBuffer<msg_t, 10> MessageRx;
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bool dataBits[BIT_SIZE]={0};
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unsigned short maison=0;
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const unsigned char source = 0x02;
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const unsigned char trans = 0x02;
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long startedAt=0;
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long endedAt=0;
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Timer xTime;
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Thread thread(osPriorityAboveNormal);
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void getPulseF(void)
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{
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endedAt = xTime.read_us(); // set timer end for last pin
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timeDiff.v = endedAt - startedAt;
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timeDiff.pin = 1;
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PulseWidth.push(timeDiff);
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startedAt= endedAt; // set timer start for this pin
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}
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void getPulseR(void)
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{
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endedAt = xTime.read_us(); // set timer end for last pin
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timeDiff.v = endedAt - startedAt;
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timeDiff.pin = 0;
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PulseWidth.push(timeDiff);
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startedAt= endedAt; // set timer start for this pin
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}
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void wait_posedge(void)
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{
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if(CLR != 0)
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{
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while(CLR != 0) ;
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}
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else ;
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while(CLR == 0) ;
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}
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void wait_negedge(void)
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{
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if(CLR == 0)
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{
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while(CLR == 0) ;
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}
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else ;
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while(CLR != 0) ;
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}
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unsigned long read_ctrl_reg(void)
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{
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unsigned long return_value = 0;
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unsigned long curr_bit = 0 ;
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int i ;
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RxTx = 1;
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//Reg_Data = 0;
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wait_posedge();
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//wait_ms(10);
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Reg_Data = 1;
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RxTx = 1;
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for(i=0;i<=23;i++)
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{
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//DBG("i= %d", i);
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wait_posedge();
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curr_bit = Rx ;
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return_value |= ((curr_bit) << (23-i)) ;
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}
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//wait_negedge();
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Reg_Data = 0; //clr pin reg_data
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wait(1) ;
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return return_value ;
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}
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void write_ctrl_reg(unsigned long write_data)
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{
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int i ;
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Reg_Data = 1; //set pin reg_data to Register mode
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RxTx = 0; //set pin rxtx to Tx mode
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wait_posedge(); //find posedge for Tcr
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for(i=0;i<=23;i++) //low code effciency may result in wrong writing
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{
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if(((write_data >> (23-i)) & 0x1) == 0)
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{
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Tx = 0;
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}
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else
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{
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Tx = 1;
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}
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wait_posedge();
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}
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RxTx = 1; //set pin rxtx to Rx
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Reg_Data = 0; //set pin reg_data
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Tx = 0;
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wait(0.1);
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}
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void SendBit(bool value)
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{
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// DBG("%d ", value);
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Tx = !Tx;
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if(value)
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{
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wait_us(800);
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Tx = !Tx;
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wait_us(800);
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}
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else
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{
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wait_us(1600);
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}
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}
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void SendByte(char value)
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{
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int i=0;
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bool bit;
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static char cnt=0;
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//pc.printf("%0.2X ", value);
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for(i=0; i<8; i++)
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{
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bit = (bool)(0x01 & (value>>i)); // LSB first
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SendBit(bit);
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if(bit)
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cnt++;
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else
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cnt=0;
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if(cnt == 5)
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{
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SendBit(0);
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cnt=0;
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}
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}
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}
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void SendPreamble(void)
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{
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int i;
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181
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182
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//pc.printf("\r\n");
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Tx=1;
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184
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for(i=0; i<17; i++)
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185
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SendBit(0);
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186
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for(i=0; i<6; i++)
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187
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SendBit(1);
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SendBit(0);
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189
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1:265edb6bdd52
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190
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}
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1:265edb6bdd52
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191
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1:265edb6bdd52
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void SendPostamble(void)
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193
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{
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194
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int i;
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1:265edb6bdd52
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195
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196
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for(i=0; i<8; i++) // Send 0xFF
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1:265edb6bdd52
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197
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SendBit(1);
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1:265edb6bdd52
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198
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for(i=0; i<8; i++)
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1:265edb6bdd52
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SendBit(0);
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200
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1:265edb6bdd52
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201
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}
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1:265edb6bdd52
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203
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void SendFrame(unsigned char *data, int length)
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1:265edb6bdd52
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{
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int i, chksum=0;
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RxTx = 0; //set pin rxtx to Tx
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Tx=0;
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7:eaa973daaf58
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// wait_us(500);
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//wait_ms(1);
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SendPreamble();
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for(i=0; i<length; i++)
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1:265edb6bdd52
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{
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SendByte(data[i]);
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218
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chksum += data[i];
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1:265edb6bdd52
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219
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}
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chksum = ~chksum +1;
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221
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222
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SendByte((char)(chksum>>8));
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SendByte((char)chksum);
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1:265edb6bdd52
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224
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SendPostamble();
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1:265edb6bdd52
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225
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// Tx=1;
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7:eaa973daaf58
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227
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1:265edb6bdd52
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228
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RxTx = 1; //set pin rxtx to Rx
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15:2f74266340ac
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229
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//pc.printf("\r\n");
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1:265edb6bdd52
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230
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}
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1:265edb6bdd52
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231
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17:2a9e02dccd88
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232
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void SendAssoc(int zone, int delest)
|
sev2000 |
17:2a9e02dccd88
|
233
|
{
|
sev2000 |
17:2a9e02dccd88
|
234
|
msg_t msg={0xFF,0xFF,0x02,0xFF,0x02,0xF0,0xFF,0xFF,0xF1,0xE6,0x13,0x03,0x06,0x03, 14}; // zone 4, 3 zone, 6 delest channels, delest chan 3
|
sev2000 |
17:2a9e02dccd88
|
235
|
|
sev2000 |
17:2a9e02dccd88
|
236
|
unsigned char dest = 0;
|
sev2000 |
17:2a9e02dccd88
|
237
|
|
sev2000 |
17:2a9e02dccd88
|
238
|
dest = 0x10 + zone-1;
|
sev2000 |
17:2a9e02dccd88
|
239
|
|
sev2000 |
17:2a9e02dccd88
|
240
|
msg.data[2] = source;
|
sev2000 |
17:2a9e02dccd88
|
241
|
msg.data[4] = trans;
|
sev2000 |
20:b14dcf6ec4bf
|
242
|
msg.data[8] = maison >>8;
|
sev2000 |
20:b14dcf6ec4bf
|
243
|
msg.data[9] = maison & 0xFF;
|
sev2000 |
17:2a9e02dccd88
|
244
|
msg.data[10] = dest;
|
sev2000 |
17:2a9e02dccd88
|
245
|
msg.data[13] = delest;
|
sev2000 |
17:2a9e02dccd88
|
246
|
|
sev2000 |
17:2a9e02dccd88
|
247
|
MessageTx.push(msg);
|
sev2000 |
17:2a9e02dccd88
|
248
|
}
|
sev2000 |
17:2a9e02dccd88
|
249
|
|
sev2000 |
12:ce8ae07fd23b
|
250
|
void SendCmd(int zone, h_mode prog)
|
sev2000 |
1:265edb6bdd52
|
251
|
{
|
sev2000 |
13:345e4251cf25
|
252
|
//char tab[8]={0xF1,0xE6,0x01,0x10,0x01,0x00,0x03,0x64}; // Zone1 Sun
|
sev2000 |
13:345e4251cf25
|
253
|
msg_t msg;
|
sev2000 |
17:2a9e02dccd88
|
254
|
unsigned char dest = 0;
|
sev2000 |
7:eaa973daaf58
|
255
|
// control 1 char
|
sev2000 |
7:eaa973daaf58
|
256
|
// information 0-8 char
|
sev2000 |
7:eaa973daaf58
|
257
|
|
sev2000 |
1:265edb6bdd52
|
258
|
int i;
|
sev2000 |
1:265edb6bdd52
|
259
|
|
sev2000 |
1:265edb6bdd52
|
260
|
dest = 0x10 + zone-1;
|
sev2000 |
20:b14dcf6ec4bf
|
261
|
msg.data[0] = maison >>8;
|
sev2000 |
20:b14dcf6ec4bf
|
262
|
msg.data[1] = maison & 0xFF;
|
sev2000 |
13:345e4251cf25
|
263
|
msg.data[2] = source;
|
sev2000 |
13:345e4251cf25
|
264
|
msg.data[3] = dest;
|
sev2000 |
13:345e4251cf25
|
265
|
msg.data[4] = trans;
|
sev2000 |
13:345e4251cf25
|
266
|
msg.data[6] = (char)prog;
|
sev2000 |
14:b368fb51df96
|
267
|
msg.data[7] = 0x64;
|
sev2000 |
1:265edb6bdd52
|
268
|
|
sev2000 |
1:265edb6bdd52
|
269
|
for(i=0; i<3; i++)
|
sev2000 |
1:265edb6bdd52
|
270
|
{
|
sev2000 |
13:345e4251cf25
|
271
|
msg.data[5]=i; //message count
|
sev2000 |
13:345e4251cf25
|
272
|
msg.lenght = 8;
|
sev2000 |
13:345e4251cf25
|
273
|
MessageTx.push(msg);
|
sev2000 |
13:345e4251cf25
|
274
|
//wait_ms(30);
|
sev2000 |
1:265edb6bdd52
|
275
|
}
|
sev2000 |
1:265edb6bdd52
|
276
|
}
|
sev2000 |
1:265edb6bdd52
|
277
|
|
sev2000 |
7:eaa973daaf58
|
278
|
void SendCmda(char *tab, int lenght)
|
sev2000 |
7:eaa973daaf58
|
279
|
{
|
sev2000 |
13:345e4251cf25
|
280
|
msg_t msg;
|
sev2000 |
7:eaa973daaf58
|
281
|
int i;
|
sev2000 |
7:eaa973daaf58
|
282
|
|
sev2000 |
7:eaa973daaf58
|
283
|
/* dest = 0x10 + zone-1;
|
sev2000 |
7:eaa973daaf58
|
284
|
tab[3] = dest;
|
sev2000 |
7:eaa973daaf58
|
285
|
tab[6] = prog;
|
sev2000 |
7:eaa973daaf58
|
286
|
*/
|
sev2000 |
13:345e4251cf25
|
287
|
memcpy(msg.data, tab, lenght);
|
sev2000 |
7:eaa973daaf58
|
288
|
for(i=0; i<3; i++)
|
sev2000 |
7:eaa973daaf58
|
289
|
{
|
sev2000 |
13:345e4251cf25
|
290
|
msg.data[5] = tab[5] + i; //message count
|
sev2000 |
13:345e4251cf25
|
291
|
MessageTx.push(msg);
|
sev2000 |
13:345e4251cf25
|
292
|
//wait_ms(30);
|
sev2000 |
7:eaa973daaf58
|
293
|
}
|
sev2000 |
7:eaa973daaf58
|
294
|
}
|
sev2000 |
7:eaa973daaf58
|
295
|
|
sev2000 |
13:345e4251cf25
|
296
|
void TASK_SndRcv(void)
|
sev2000 |
0:9ef8edfe21bc
|
297
|
{
|
sev2000 |
0:9ef8edfe21bc
|
298
|
pulse_t pulse;
|
sev2000 |
13:345e4251cf25
|
299
|
int cnt_1 = 0, rcv_cnt=0;
|
sev2000 |
0:9ef8edfe21bc
|
300
|
char tmp[32]={0};
|
sev2000 |
0:9ef8edfe21bc
|
301
|
char state=0;
|
sev2000 |
0:9ef8edfe21bc
|
302
|
char s=0, l=0, bit_ptr=0;
|
sev2000 |
13:345e4251cf25
|
303
|
msg_t msg;
|
sev2000 |
0:9ef8edfe21bc
|
304
|
|
sev2000 |
10:65fd918fc224
|
305
|
while(true)
|
sev2000 |
0:9ef8edfe21bc
|
306
|
{
|
sev2000 |
13:345e4251cf25
|
307
|
rcv_cnt=0;
|
sev2000 |
13:345e4251cf25
|
308
|
while(!PulseWidth.empty() && rcv_cnt < 200)
|
sev2000 |
10:65fd918fc224
|
309
|
{
|
sev2000 |
0:9ef8edfe21bc
|
310
|
PulseWidth.pop(pulse);
|
sev2000 |
0:9ef8edfe21bc
|
311
|
sprintf(tmp, "%d, %ld|", pulse.pin, pulse.v);
|
sev2000 |
7:eaa973daaf58
|
312
|
|
sev2000 |
7:eaa973daaf58
|
313
|
//pc.printf("%s ", tmp);
|
sev2000 |
0:9ef8edfe21bc
|
314
|
|
sev2000 |
0:9ef8edfe21bc
|
315
|
if ((pulse.v > 700) && (pulse.v < 1000))
|
sev2000 |
0:9ef8edfe21bc
|
316
|
{ // short off detected
|
sev2000 |
0:9ef8edfe21bc
|
317
|
s++;
|
sev2000 |
0:9ef8edfe21bc
|
318
|
l=0;
|
sev2000 |
0:9ef8edfe21bc
|
319
|
}
|
sev2000 |
0:9ef8edfe21bc
|
320
|
else if ((pulse.v > 1500) && (pulse.v < 1800))
|
sev2000 |
0:9ef8edfe21bc
|
321
|
{ // long off detected
|
sev2000 |
0:9ef8edfe21bc
|
322
|
l++;
|
sev2000 |
0:9ef8edfe21bc
|
323
|
s=0;
|
sev2000 |
0:9ef8edfe21bc
|
324
|
}
|
sev2000 |
0:9ef8edfe21bc
|
325
|
else
|
sev2000 |
0:9ef8edfe21bc
|
326
|
{
|
sev2000 |
0:9ef8edfe21bc
|
327
|
l=0;
|
sev2000 |
0:9ef8edfe21bc
|
328
|
s=0;
|
sev2000 |
0:9ef8edfe21bc
|
329
|
state=0;
|
sev2000 |
0:9ef8edfe21bc
|
330
|
}
|
sev2000 |
0:9ef8edfe21bc
|
331
|
switch(state)
|
sev2000 |
0:9ef8edfe21bc
|
332
|
{
|
sev2000 |
0:9ef8edfe21bc
|
333
|
case 0: // Detect preamble
|
sev2000 |
0:9ef8edfe21bc
|
334
|
if(s >= 12) // out of 12
|
sev2000 |
0:9ef8edfe21bc
|
335
|
state=1;
|
sev2000 |
0:9ef8edfe21bc
|
336
|
//pc.printf("%d ", s);
|
sev2000 |
0:9ef8edfe21bc
|
337
|
break;
|
sev2000 |
0:9ef8edfe21bc
|
338
|
case 1: // wait start bit (first long)
|
sev2000 |
0:9ef8edfe21bc
|
339
|
//pc.printf("OK2");
|
sev2000 |
0:9ef8edfe21bc
|
340
|
s=0;
|
sev2000 |
0:9ef8edfe21bc
|
341
|
if (l==1)
|
sev2000 |
0:9ef8edfe21bc
|
342
|
{
|
sev2000 |
0:9ef8edfe21bc
|
343
|
state = 2;
|
sev2000 |
10:65fd918fc224
|
344
|
cnt_1=0;
|
sev2000 |
10:65fd918fc224
|
345
|
bit_ptr=0;
|
sev2000 |
0:9ef8edfe21bc
|
346
|
//bit_ptr++; inculde start bit in payload
|
sev2000 |
0:9ef8edfe21bc
|
347
|
}
|
sev2000 |
0:9ef8edfe21bc
|
348
|
l=0;
|
sev2000 |
0:9ef8edfe21bc
|
349
|
break;
|
sev2000 |
0:9ef8edfe21bc
|
350
|
case 2:
|
sev2000 |
0:9ef8edfe21bc
|
351
|
//pc.printf(" %d", pulse.v);
|
sev2000 |
0:9ef8edfe21bc
|
352
|
|
sev2000 |
0:9ef8edfe21bc
|
353
|
if (s == 2)
|
sev2000 |
0:9ef8edfe21bc
|
354
|
{
|
sev2000 |
0:9ef8edfe21bc
|
355
|
dataBits[bit_ptr] = 1;
|
sev2000 |
0:9ef8edfe21bc
|
356
|
l=0;
|
sev2000 |
0:9ef8edfe21bc
|
357
|
s=0;
|
sev2000 |
0:9ef8edfe21bc
|
358
|
bit_ptr++;
|
sev2000 |
10:65fd918fc224
|
359
|
cnt_1++; // Count bit for ETX detection
|
sev2000 |
0:9ef8edfe21bc
|
360
|
}
|
sev2000 |
0:9ef8edfe21bc
|
361
|
if (l == 1 && s==0)
|
sev2000 |
0:9ef8edfe21bc
|
362
|
{
|
sev2000 |
0:9ef8edfe21bc
|
363
|
dataBits[bit_ptr] = 0;
|
sev2000 |
0:9ef8edfe21bc
|
364
|
l=0;
|
sev2000 |
0:9ef8edfe21bc
|
365
|
s=0;
|
sev2000 |
10:65fd918fc224
|
366
|
|
sev2000 |
13:345e4251cf25
|
367
|
if(cnt_1 != 5) // skip the 0 after 5 bits = 1
|
sev2000 |
10:65fd918fc224
|
368
|
bit_ptr++;
|
sev2000 |
10:65fd918fc224
|
369
|
cnt_1=0;
|
sev2000 |
10:65fd918fc224
|
370
|
|
sev2000 |
0:9ef8edfe21bc
|
371
|
}
|
sev2000 |
0:9ef8edfe21bc
|
372
|
if(bit_ptr > BIT_SIZE)
|
sev2000 |
0:9ef8edfe21bc
|
373
|
{
|
sev2000 |
0:9ef8edfe21bc
|
374
|
state=0;
|
sev2000 |
7:eaa973daaf58
|
375
|
pc.printf("Frame too long : dropped\r\n");
|
sev2000 |
0:9ef8edfe21bc
|
376
|
}
|
sev2000 |
10:65fd918fc224
|
377
|
if(cnt_1 == 8)
|
sev2000 |
10:65fd918fc224
|
378
|
{
|
sev2000 |
13:345e4251cf25
|
379
|
processData(bit_ptr-1);
|
sev2000 |
10:65fd918fc224
|
380
|
state=0;
|
sev2000 |
10:65fd918fc224
|
381
|
//PulseWidth.reset();
|
sev2000 |
10:65fd918fc224
|
382
|
}
|
sev2000 |
0:9ef8edfe21bc
|
383
|
break;
|
sev2000 |
10:65fd918fc224
|
384
|
|
sev2000 |
0:9ef8edfe21bc
|
385
|
}
|
sev2000 |
13:345e4251cf25
|
386
|
rcv_cnt++;
|
sev2000 |
10:65fd918fc224
|
387
|
}
|
sev2000 |
13:345e4251cf25
|
388
|
|
sev2000 |
13:345e4251cf25
|
389
|
// Send Frame
|
sev2000 |
20:b14dcf6ec4bf
|
390
|
if (!MessageTx.empty() && rcv_cnt == 0 && RxTx==1) // If message to emit and didn't received message nor sending in progress
|
sev2000 |
13:345e4251cf25
|
391
|
{
|
sev2000 |
13:345e4251cf25
|
392
|
MessageTx.pop(msg);
|
sev2000 |
15:2f74266340ac
|
393
|
// sendbit_mutex.lock();
|
sev2000 |
13:345e4251cf25
|
394
|
SendFrame(msg.data, msg.lenght);
|
sev2000 |
15:2f74266340ac
|
395
|
// sendbit_mutex.unlock();
|
sev2000 |
15:2f74266340ac
|
396
|
|
sev2000 |
13:345e4251cf25
|
397
|
}
|
sev2000 |
13:345e4251cf25
|
398
|
|
sev2000 |
13:345e4251cf25
|
399
|
Thread::wait(30); // evey 30 mS we can send a message
|
sev2000 |
0:9ef8edfe21bc
|
400
|
}
|
sev2000 |
0:9ef8edfe21bc
|
401
|
}
|
sev2000 |
0:9ef8edfe21bc
|
402
|
|
sev2000 |
10:65fd918fc224
|
403
|
|
sev2000 |
13:345e4251cf25
|
404
|
int processData( int size)
|
sev2000 |
0:9ef8edfe21bc
|
405
|
{
|
sev2000 |
0:9ef8edfe21bc
|
406
|
int x=0;
|
sev2000 |
0:9ef8edfe21bc
|
407
|
int i = 0;
|
sev2000 |
0:9ef8edfe21bc
|
408
|
int j= 0;
|
sev2000 |
13:345e4251cf25
|
409
|
char nibble[18]={0};
|
sev2000 |
10:65fd918fc224
|
410
|
int chksum=0, ETX_pos=0;
|
sev2000 |
13:345e4251cf25
|
411
|
msg_t message;
|
sev2000 |
0:9ef8edfe21bc
|
412
|
|
sev2000 |
10:65fd918fc224
|
413
|
ETX_pos= size/8;
|
sev2000 |
7:eaa973daaf58
|
414
|
for (i=0; i<ETX_pos; i++)
|
sev2000 |
0:9ef8edfe21bc
|
415
|
{
|
sev2000 |
0:9ef8edfe21bc
|
416
|
for (j=0;j<8;j++)
|
sev2000 |
0:9ef8edfe21bc
|
417
|
{
|
sev2000 |
0:9ef8edfe21bc
|
418
|
if ( dataBits[x])
|
sev2000 |
0:9ef8edfe21bc
|
419
|
nibble[i] |= 1<<j;
|
sev2000 |
0:9ef8edfe21bc
|
420
|
dataBits[x] =0; // clean variable
|
sev2000 |
0:9ef8edfe21bc
|
421
|
x++;
|
sev2000 |
0:9ef8edfe21bc
|
422
|
}
|
sev2000 |
0:9ef8edfe21bc
|
423
|
}
|
sev2000 |
0:9ef8edfe21bc
|
424
|
|
sev2000 |
7:eaa973daaf58
|
425
|
for (i=0; i<ETX_pos-2; i++) // Calculate Checksum
|
sev2000 |
13:345e4251cf25
|
426
|
{
|
sev2000 |
13:345e4251cf25
|
427
|
message.data[i] = nibble[i];
|
sev2000 |
13:345e4251cf25
|
428
|
message.lenght = ETX_pos-2;
|
sev2000 |
0:9ef8edfe21bc
|
429
|
chksum += nibble[i];
|
sev2000 |
13:345e4251cf25
|
430
|
}
|
sev2000 |
0:9ef8edfe21bc
|
431
|
chksum = ~chksum +1;
|
sev2000 |
0:9ef8edfe21bc
|
432
|
|
sev2000 |
0:9ef8edfe21bc
|
433
|
#ifdef __DEBUG__
|
sev2000 |
7:eaa973daaf58
|
434
|
for (i=0; i<ETX_pos; i++)
|
sev2000 |
0:9ef8edfe21bc
|
435
|
pc.printf("%0.2X ",nibble[i]);
|
sev2000 |
0:9ef8edfe21bc
|
436
|
pc.printf("\r\n");
|
sev2000 |
0:9ef8edfe21bc
|
437
|
#endif
|
sev2000 |
13:345e4251cf25
|
438
|
if ( (char)(chksum>>8) != nibble[ETX_pos-2] || (char)chksum != nibble[ETX_pos-1] )
|
sev2000 |
13:345e4251cf25
|
439
|
pc.printf("CRC Error\r\n");
|
sev2000 |
13:345e4251cf25
|
440
|
else
|
sev2000 |
13:345e4251cf25
|
441
|
MessageRx.push(message);
|
sev2000 |
7:eaa973daaf58
|
442
|
|
sev2000 |
0:9ef8edfe21bc
|
443
|
return 0;
|
sev2000 |
0:9ef8edfe21bc
|
444
|
}
|
sev2000 |
0:9ef8edfe21bc
|
445
|
|
sev2000 |
0:9ef8edfe21bc
|
446
|
|
sev2000 |
13:345e4251cf25
|
447
|
void Init_X2D(void)
|
sev2000 |
0:9ef8edfe21bc
|
448
|
{
|
sev2000 |
6:e373216c80bf
|
449
|
unsigned long Ctrl_Reg = 0;
|
sev2000 |
5:dcbebd42186a
|
450
|
|
sev2000 |
4:844c00dd0366
|
451
|
Rx.fall(&getPulseF);
|
sev2000 |
4:844c00dd0366
|
452
|
Rx.rise(&getPulseR);
|
sev2000 |
0:9ef8edfe21bc
|
453
|
UART = 1;
|
sev2000 |
5:dcbebd42186a
|
454
|
|
sev2000 |
5:dcbebd42186a
|
455
|
write_ctrl_reg(0x01E22F); // 1200 baud, deviation =1, Asynchrone
|
sev2000 |
5:dcbebd42186a
|
456
|
Ctrl_Reg = read_ctrl_reg();
|
sev2000 |
5:dcbebd42186a
|
457
|
DBG("Ctrl_reg = %X", Ctrl_Reg);
|
sev2000 |
5:dcbebd42186a
|
458
|
|
sev2000 |
0:9ef8edfe21bc
|
459
|
RxTx = 1; //set pin rxtx to Rx
|
sev2000 |
0:9ef8edfe21bc
|
460
|
Reg_Data = 0; //set pin reg_data
|
sev2000 |
0:9ef8edfe21bc
|
461
|
Tx = 0;
|
sev2000 |
0:9ef8edfe21bc
|
462
|
|
sev2000 |
0:9ef8edfe21bc
|
463
|
xTime.start();
|
sev2000 |
0:9ef8edfe21bc
|
464
|
xTime.reset();
|
sev2000 |
0:9ef8edfe21bc
|
465
|
startedAt = xTime.read_us(); // set initial timer end
|
sev2000 |
0:9ef8edfe21bc
|
466
|
|
sev2000 |
13:345e4251cf25
|
467
|
thread.start(callback(TASK_SndRcv));
|
sev2000 |
0:9ef8edfe21bc
|
468
|
} |